Silicon is one of the most abundant materials which is used in many areas of modern research and technology. A variety of those applications require surface nanopatterning with minimum structure defects. However, the high-quality nanostructuring of large areas of silicon surface at industrially acceptable speed is still a challenge. Here, we report a rapid formation of highly regular laser-induced periodic surface structures (HR-LIPSS) in the regime of strong ablation by infrared femtosecond laser pulses at sub-MHz repetition rate. Parameters of the laser-surface interactions and obtained experimental results suggest an important role of electrostatically assisted bond softening in initiating the HR-LIPSS formation
Quasi-periodic nano- and microstructures have been formed on silicon surface using IR ( λ ≈ 744 nm) ...
A new approach to experimentally investigate laser-induced periodic surface structures (LIPSSs) is i...
A new approach to experimentally investigate laser-induced periodic surface structures (LIPSSs) is i...
Silicon is one of the most abundant materials which is used in many areas of modern research and tec...
International audienceFemtosecond laser induced surface modification allows us to functionalize surf...
International audienceFemtosecond laser induced surface modification allows us to functionalize surf...
International audienceFemtosecond laser induced surface modification allows us to functionalize surf...
International audienceFemtosecond laser induced surface modification allows us to functionalize surf...
Sub-MHz repetition rate femtosecond laser pulses produce extremely regular periodic surface structur...
Sub-MHz repetition rate femtosecond laser pulses produce extremely regular periodic surface structur...
Sub-MHz repetition rate femtosecond laser pulses produce extremely regular periodic surface structur...
Sub-MHz repetition rate femtosecond laser pulses produce extremely regular periodic surface structur...
Femtosecond laser pulses of sub-MHz repetition rate induce highly regular periodic surface structure...
Femtosecond laser pulses of sub-MHz repetition rate induce highly regular periodic surface structure...
yesQuasi-periodic nano- and microstructures have been formed on silicon surface using IR ( λ ≈ 744 n...
Quasi-periodic nano- and microstructures have been formed on silicon surface using IR ( λ ≈ 744 nm) ...
A new approach to experimentally investigate laser-induced periodic surface structures (LIPSSs) is i...
A new approach to experimentally investigate laser-induced periodic surface structures (LIPSSs) is i...
Silicon is one of the most abundant materials which is used in many areas of modern research and tec...
International audienceFemtosecond laser induced surface modification allows us to functionalize surf...
International audienceFemtosecond laser induced surface modification allows us to functionalize surf...
International audienceFemtosecond laser induced surface modification allows us to functionalize surf...
International audienceFemtosecond laser induced surface modification allows us to functionalize surf...
Sub-MHz repetition rate femtosecond laser pulses produce extremely regular periodic surface structur...
Sub-MHz repetition rate femtosecond laser pulses produce extremely regular periodic surface structur...
Sub-MHz repetition rate femtosecond laser pulses produce extremely regular periodic surface structur...
Sub-MHz repetition rate femtosecond laser pulses produce extremely regular periodic surface structur...
Femtosecond laser pulses of sub-MHz repetition rate induce highly regular periodic surface structure...
Femtosecond laser pulses of sub-MHz repetition rate induce highly regular periodic surface structure...
yesQuasi-periodic nano- and microstructures have been formed on silicon surface using IR ( λ ≈ 744 n...
Quasi-periodic nano- and microstructures have been formed on silicon surface using IR ( λ ≈ 744 nm) ...
A new approach to experimentally investigate laser-induced periodic surface structures (LIPSSs) is i...
A new approach to experimentally investigate laser-induced periodic surface structures (LIPSSs) is i...